Mobility disabilities are prominent in society with wide-ranging detriments to affected individuals. Addressing the specific deficits of individuals within this heterogeneous population requires modular, partial-assist, lower-limb exoskeletons. This paper introduces the Modular Backdrivable Lower-limb Unloading Exoskeleton (M-BLUE), which implements high torque, low mechanical impedance actuators on commercial orthoses with sheet metal modifications to produce a variety of hip- and/or knee-assisting configurations. Benchtop system identification verifies the desirable backdrive properties of the actuator, and allows for torque prediction within 0.4 Nm. An able-bodied human subject experiment demonstrates that three unilateral configurations of M-BLUE (hip only, knee only, and hip-knee) with a simple gravity compensation controller can reduce muscle EMG readings in a lifting and lowering task relative to the bare condition. Reductions in mean muscular effort and peak muscle activation were seen across the primary squat musculature (excluding biceps femoris), demonstrating the potential to reduce fatigue leading to poor lifting posture. These promising results motivate applications of M-BLUE to additional subject populations such as hip/knee osteoarthritis and geriatric frailty, and the expansion of M-BLUE to bilateral and ankle configurations.
翻译:应对不同人群中个人的具体缺陷需要模块化、部分辅助、低脂排骨素。本文介绍M-BLUE(M-BLUE)的模块式、部分辅助和低脂排骨素。 高液压低液压低液压低液压低液压低液压外骨骨骼(M-BLUE)的模块式后推力器使用高硬力、低机械阻力驱动器,用于商业金属板改造的金属板和金属板材,以产生各种臀部和(或)膝部辅助配置。在主下部肌肉结构中(不包括乳糖浆),并允许在0.4牛身内进行透析预测。 精巧的人体实验显示,M-BLUE(仅限、膝部膝盖和臀部)的三个单方结构(仅限重力调节器)的单方结构可以降低肌肉的读力,以提升和降低与光质相比的任务。在初级肌肉部肌肉(不包括乳头骨部)中,表明将疲劳力力压降低至低压的双骨架结构。